References
- J. Bohdziewicz, E. Sroka, Integrated system of activated sludge–reverse osmosis in the treatment of the wastewater from the
meat industry, Process Biochem., 40 (2005) 1517–1523.
- A. Puñal, J.M. Lema, Anaerobic treatment of wastewater from
a fish-canning factory in a full-scale upflow anaerobic sludge
blanket (UASB) reactor, Water Sci. Technol., 40 (1999) 57–62.
- R.C. Leitão, A.C. van Haandel, G. Zeeman, G. Lettinga,
The effects of operational and environmental variations on
anaerobic wastewater treatment systems: a review, Bioresour.
Technol., 97 (2006) 1105–1118.
- P.-L. Yu, D.S. van der Linden, H. Sugiarto, R.C. Anderson,
Antimicrobial peptides isolated from the blood of farm animals,
Anim. Prod. Sci., 50 (2010) 660–669.
- U.S. Environmental Protection Agency, Development Document
for Proposed Effluent Limitations Guidelines and New Source
Performance Standards for the Poultry Processing Point Source
Category, U.S. Environmental Protection Agency, Washington,
D.C., 1975.
- C.S.F. Bah, A.E.-D.A. Bekhit, A. Carne, M.A. McConnell,
Slaughterhouse blood: an emerging source of bioactive
compounds, Compr. Rev. Food Sci. Food Saf., 12 (2013)
314–331.
- B. Ketheesan, D.C. Stuckey, Effects of hydraulic/organic shock/transient loads in anaerobic wastewater Treatment: a review,
Crit. Rev. Env. Sci. Technol., 45 (2015) 2693–2727.
- M.B. Moreira, S.M. Ratusznei, J.A.D. Rodrigues, M. Zaiat, E.
Foresti, Influence of organic shock loads in an ASBBR treating
synthetic wastewater with different concentration levels,
Bioresour. Technol., 99 (2008) 3256–3266.
- S.M. Acharya, K. Kundu, T.R. Sreekrishnan, Improved stability
of anaerobic digestion through the use of selective acidogenic
culture, J. Environ. Eng., 141 (2015) 1–8.
- X. Zhang, S. Zheng, X. Xiao, L. Wang, Y. Yin, Simultaneous
nitrification/denitrification and stable sludge/water separation
achieved in a conventional activated sludge process with severe
filamentous bulking, Bioresour. Technol., 226 (2017) 267–271.
- A.M.P. Martins, K. Pagilla, J.J. Heijnen, M.C.M. van Loosdrecht,
Filamentous bulking sludge – a critical review, Water Res., 38
(2004) 793–817.
- G. Coskuner, M.S. Jassim, Development of a correlation to study
parameters affecting nitrification in a domestic wastewater
treatment plant, J. Chem. Technol. Biotechnol., 83 (2008), 299–308.
- O. Perez-Garcia, F.M.E. Escalante, L.E. de-Bashan, Y. Bashan,
Heterotrophic cultures of microalgae: metabolism and potential
products, Water Res., 45 (2011) 11–36.
- É.C. Francisco, T. Teixeira Franco, L. Queiroz Zepka, E.
Jacob-Lopes, From waste-to-energy: the process integration
and intensification for bulk oil and biodiesel production by
microalgae, J. Environ. Chem. Eng., 3 (2015) 482–487.
- T.-Y. Zhang, H.-Y. Hu, Y.-H. Wu, L.-L. Zhuang, X.-Q. Xu, X.-X.
Wang, G.-H. Dao, Promising solutions to solve the bottlenecks
in the large-scale cultivation of microalgae for biomass/bioenergy production, Renewable Sustainable Energy Rev., 60
(2016) 1602–1614.
- A.M. dos Santos, G.R. Roso, C.R. Menezes, M.I. Queiroz,
L.Q. Zepka, E. Jacob-Lopes, The bioeconomy of microalgal
heterotrophic bioreactors applied to agroindustrial wastewater
treatment, Desal. Wat. Treat., 64 (2017) 12–20.
- M.M. Maroneze, J.S. Barin, C.R.d. Menezes, M.I. Queiroz, L.Q.
Zepka, E. Jacob-Lopes, Treatment of cattle-slaughterhouse
wastewater and the reuse of sludge for biodiesel production
by microalgal heterotrophic bioreactors, Sci. Agric., 71 (2014)
521–524.
- M.D. Guiry, G.M. Guiry, AlgaeBase, World-Wide Electronic
Publication, National University of Ireland, 2017, Available at:
http://www.algaebase.org/.
- A.M. dos Santos, M.C. Deprá, A.M. dos Santos, L.Q. Zepka,
E. Jacob-Lopes, Aeration energy requirements in microalgal
heterotrophic bioreactors applied to agroindustrial wastewater
treatment, Curr. Biotechnol., 4 (2015) 249–254.
- A.M. dos Santos, A.M. dos Santos, R.B. Sartori, L.Z. Queiroz,
J.S. Barin, E. Jacob-Lopes, Nutrient cycling in meat processing
industry by microalgae-based processes, Desal. Wat. Treat., 100
(2017) 91–99.
- R. Rippka, J. Deruelles, J.B. Waterbury, M. Herdman, R.Y.
Stanier, Generic assignments, strain histories and properties of
pure cultures of cyanobacteria, Microbiology, 111 (1979) 1–61.
- APHA, Standard Methods for the Examination of Water and
Wastewater, American Public Health Association, Washington,
D.C., 2005.
- L. Shen, J. Damascene Ndayambaje, T. Murwanashyaka, W.
Cui, E. Manirafasha, C. Chen, Y. Wang, Y. Lu, Assessment upon
heterotrophic microalgae screened from wastewater microbiota
for concurrent pollutants removal and biofuel production,
Bioresour. Technol., 245 (2017) 386–393.
- K.L. Schulze, R.S. Lipe, Relationship between substrate
concentration, growth rate, and respiration rate of Escherichia
coli in continuous culture, Arch. Mikrobiol., 48 (1964) 1–20.
- S. Pirt, The maintenance energy of bacteria in growing cultures,
Proc. R. Soc. London, Ser. B, 163 (1965) 224–231.
- C.P. Kempes, P.M. van Bodegom, D. Wolpert, E. Libby, J.
Amend, T. Hoehler, Drivers of bacterial maintenance and
minimal energy requirements, Front. Microbiol., 8 (2017) 1–10.
- E.W. Low, H.A. Chase, The effects of maintenance energy
requirements on biomass production during wastewater
treatment, Water Res., 33 (1999) 847–853.
- P. Talbot, J. De La Noue, Tertiary treatment of wastewater
with Phormidium bonheri (Schmidle) under various light and
temperature conditions, Water Res., 27 (1993) 153–159.
- N.N. Bich, M.I. Yaziz, N. Kakti, Combination of Chlorella vulgaris and Andeichhornia crassipes for wastewater nitrogen removal,
Water Res., 33 (1999) 2357–2362.
- M.I. Queiroz, E. Jacob-Lopes, L.Q. Zepka, R.G. Bastos, R.
Goldbeck, The kinetics of the removal of nitrogen and organic
matter from parboiled rice effluent by cyanobacteria in a stirred
batch reactor, Bioresour. Technol., 98 (2007) 2163–2169.
- Food Agriculture Organization of the United Nations, FAOSTAT
Statistics Database, Food and Agriculture Organization of the
United Nations, 2017.
- R.d. Pozo, D.O. Taş, H. Dulkadiroğlu, D. Orhon, V. Diez,
Biodegradability of slaughterhouse wastewater with high
blood content under anaerobic and aerobic conditions, J. Chem.
Technol. Biotechnol., 78 (2003) 384–391.
- A.M. dos Santos, K.R. Vieira, R. Basso Sartori, A.M. dos Santos,
M.I. Queiroz, L. Queiroz Zepka, E. Jacob-Lopes, Heterotrophic
cultivation of cyanobacteria: study of effect of exogenous
sources of organic carbon, absolute amount of nutrients, and
stirring speed on biomass and lipid productivity, Front. Bioeng.
Biotechnol., 5 (2017) 1–7.
- K.V. Rajeshwari, M. Balakrishnan, A. Kansal, K. Lata, V.V.N.
Kishore, State-of-the-art of anaerobic digestion technology
for industrial wastewater treatment, Renewable Sustainable
Energy Rev., 4 (2000) 135–156.
- T.-H. Hsiao, J.-S. Huang, Y.-I. Huang, Process kinetics of an
activated-sludge reactor system treating poultry slaughterhouse
wastewater, Environ. Technol., 33 (2012) 829–835.
- S.E. Sneeringer, Effects of Environmental Regulation on
Economic Activity and Pollution in Commercial Agriculture,
B.E. J. Econ. Anal. Policy, 9 (2009), Available at: https://www.degruyter.com/view/j/bejeap.2009.9.1/bejeap.2009.9.1.2248/bejeap.2009.9.1.2248.xml.
- CONAMA, Resolução n° 357/2005, Dispõe sobre a classificação
dos corpos de água e diretrizes ambientais para o seu
enquadramento, bem como estabelece as condições e padrões
de lançamento de efluentes, Conselho Nacional do Meio
Ambiente, Brasília, BR, 2005.
- Council Directive, Council Directive 91/271/EEC of 21 May 1991
Concerning Urban Waste-water Treatment, Official Journal L
135, European Union, 1991, pp. 40–52.
- S.R. Juliastuti, J. Baeyens, C. Creemers, D. Bixio, E. Lodewyckx,
The inhibitory effects of heavy metals and organic compounds on
the net maximum specific growth rate of the autotrophic biomass
in activated sludge, J. Hazard. Mater., 100 (2003) 271–283.
- B. Guieysse, Z.N. Norvill, Sequential chemical–biological
processes for the treatment of industrial wastewaters: review of
recent progresses and critical assessment, J. Hazard. Mater., 267
(2014) 142–152.
- S. Chelliapan, T. Wilby, A. Yuzir, P.J. Sallis, Influence of
organic loading on the performance and microbial community
structure of an anaerobic stage reactor treating pharmaceutical
wastewater, Desalination, 271 (2011) 257–264.
- A.P.A. Alves, P.S. Lima, M. Dezotti, J.P. Bassin, Impact of phenol
shock loads on the performance of a combined activated sludgemoving
bed biofilm reactor system, Int. Biodeterior. Biodegrad.,
123 (2017) 146–155.
- E. Jacob-Lopes, L.Q. Zepka, M.I. Queiroz, Cyanobacteria and
Carbon Sequestration, N.K. Sharma, A.K. Rai, L.J. Stal, Eds.,
Cyanobacteria, 1st ed., John Wiley & Sons, Ltd, 2014, pp. 65–71.